• 제목/요약/키워드: high strength column

검색결과 609건 처리시간 0.03초

콘크리트 충전 반원기둥보강재가 적용된 플레이트 거더의 뒤틀림 강도 (Examination of Lateral Torsional Bucling Strength by Increasing the Warping Strength of I-Section Plate Girder with Concrete Filled Half Pipe Stiffener)

  • 천진욱;이승후;백승철;김선희
    • 대한토목학회논문집
    • /
    • 제43권5호
    • /
    • pp.577-585
    • /
    • 2023
  • 횡비틀림 좌굴은 가설 중 붕괴 사고 등의 안전사고를 유발할 수 있기 때문에 설계단계에서 좌굴에 대한 정확한 안전성 검토가 이루어져야 한다. 횡비틀림 좌굴을 방지하기 위한 방안으로 단부 보강을 통해 거더의 뒤틀림 강도 증가시키거나 크로스 프레임 설치를 통해 비지지길이를 감소하는 방법 등이 있다. 크로스 프레임은 바닥판 합성 이후 구조적 역할이 적은 반면 재료비와 설치비에 따른 인건비 비중이 매우 크며, 용접부의 피로 균열로 인해 유지관리 성능을 감소시키는 요인으로 작용할 수 있다. 콘크리트 충전 반원기둥보강재를 통한 단부 보강 공법은 반원기둥 형태의 보강재를 통해 플레이트 거더의 단부를 보강하는 공법으로 거더 자체의 뒤틀림 강성을 증가시켜 횡비틀림 좌굴 강도를 증가시킨다. 이 연구에서는 콘크리트 충전 반원기둥보강재가 적용된 플레이트 거더의 뒤틀림 강도 증가로 인한 횡비틀림 좌굴 강도의 영향을 검토하기 위하여 설계식에 의한 결과와 유한요소해석의 결과를 비교하였고 실물재하실험을 통해 검증하였다. 설계식은 경계조건의 구속과 관련된 유효길이계수를 적용하고 있는 Eurocode의 설계식을 사용하였으며 결과를 검증하기 위하여다양한 단면의 유한요소해석을 수행하였다. 이후 횡방향 하중을 통해 뒤틀림을 받는 거더의 실물재하실험을 수행하여 콘크리트 충전 반원기둥보강재의 성능을 확인하였다. 그 결과 CFHPS가 적용된 플레이트 거더는 기존 판형 보강재가 적용된 플레이트 거더와 비교하여 뒤틀림 강도가 증가하였으며 그로 인해 횡비틀림 좌굴 강도가 증가하는 것으로 확인되었다.

그라우팅(C.G.S)에 의한 구조물 기초 보강 (Reinforcement of the Structure Foundation using Grouting(C.G.S))

  • 천병식;김진춘;권형석
    • 한국지반공학회:학술대회논문집
    • /
    • 한국지반공학회 2000년도 연약지반처리위원회 학술세미나
    • /
    • pp.1-11
    • /
    • 2000
  • The use of Compaction Grouting evolved in 1950's to correct structural settlement of buildings. Over the almost 50 years, the technology has been developed and is currently used in wide range of applications. Compaction Grouting, the injection of a very stiff, 'zero-slump' mortar grout under relatively high pressure, displaces and compacts soils. It can effectively repair natural or man-made soil strength deficiencies in variety of soil formations. Major applications of Compaction Grouting include densifying loose soils or fill voids caused by sinkholes, poorly compacted fills, broken utilities, improper dewatering, or soft ground tunneling excavation. Other applications include preventing liquefation, re-leveling settled structures, and using compaction grout bulbs as structural elements of minipiles or underpinning. In this paper, on the basis of the case history constructed in this year, a study has been performed to analyze the basic mechanism of the Compaction Grouting. Also, the effectiveness of the ground improvement and the bearing capacity of the Compaction Pile has been verified by the Cone Penetration Test(CPT) and Load Test. Relatively uniform Compaction grouting column could be maintained by planning the Quality Control in the course of grouting. And, the Quality Control Plan has been conceived using grout pressure, volume of grout and drilling depth.

  • PDF

고성능 액체 크로마토그래피에 의한 기능성 헤테로 고리 화합물의 분리(II) (Separation of Functionalized Heterocyclic Compounds by High Performance Liquid Chromatography (II))

  • 조윤진;이영철;이광필;박긍식
    • 분석과학
    • /
    • 제11권4호
    • /
    • pp.292-296
    • /
    • 1998
  • 헤테로 고리 화합물인 isoquinoline과 외부치환체로서 $COOCH_3$, CN 및 $CH_3$ 작용기들이 치환된 화합물들의 혼합물을 정상 및 역상법으로 분리 한 결과, 이동상의 종류에 따라 용리순서에 용매화 효과가 나타났다. 또한, 헤테로 고리 화합물 내부의 방향족성이 없는 2-methylindoline과 방향족성이 있는 2-methylindole, 그리고 헤테로 원자가 질소와 산소인 benzoxazole과 질소와 황인 benzothiazole의 머무름거동은 정상 액체 크로마토그래피의 경우 시료 분자와 충진제의 흡착 표면과의 흡착력으로 설명할 수 있었고, 역상 액체 크로마토그래피의 경우는 시료와 정지상과의 소수성 상호작용 등으로 설명할 수 있었다.

  • PDF

Relative static and dynamic performances of composite conoidal shell roofs

  • Bakshi, Kaustav;Chakravorty, Dipankar
    • Steel and Composite Structures
    • /
    • 제15권4호
    • /
    • pp.379-397
    • /
    • 2013
  • Conoidal shells are doubly curved stiff surfaces which are easy to cast and fabricate due to their singly ruled property. Application of laminated composites in fabrication of conoidal shells reduces gravity forces and mass induced forces compared to the isotropic constructions due to the high strength to weight ratio of the material. These light weight shells are preferred in the industry to cover large column free open spaces. To ensure design reliability under service conditions, detailed knowledge about different behavioral aspects of conoidal shell is necessary. Hence, in this paper, static bending, free and forced vibration responses of composite conoidal shells are studied. Lagrange's equation of motion is used in conjunction with Hamilton's principle to derive governing equations of the shell. A finite element code using eight noded curved quadratic isoparametric elements is developed to get the solutions. Uniformly distributed load for static bending analysis and three different load time histories for solution of forced vibration problems are considered. Eight different stacking sequences of graphite-epoxy composite and two different boundary conditions are taken up in the present study. The study shows that relative performances of different shell combinations in terms of static behaviour cannot provide an idea about how they will relatively behave under dynamic loads and also the fact that the points of occurrence of maximum static and dynamic displacement may not be same on a shell surface.

마감재 종류 및 두께 변화에 따른 고강도 콘크리드의 내화특성 (Fire Resistance of High-Strength Concrete Corresponding to the Finishing Material Kinds and Thickness)

  • 정홍근;배장춘;이성연;한창평;한민철;한천구
    • 한국콘크리트학회:학술대회논문집
    • /
    • 한국콘크리트학회 2009년도 춘계 학술대회 제21권1호
    • /
    • pp.473-474
    • /
    • 2009
  • 본 연구에서는 기존 건축물에 석고보드류 정도로 마감되어 있는 기둥부재를 가정하여, 마감재 종류 및 두께에 따른 내화특성을 검토하였다. 내화시험 후 폭렬현상으로 모든 시험체에서 주근부까지 폭렬이 발생되는 것으로 나타났다. 온도이력 특성으로는 35 ${\sim}$ 60분에서 9.5 T, 3.5 T(2ruq), 12.5 T, 15 T, 내화 12.5 T의 순으로 100${\sim}$200 $^{\circ}C$ 부근에서 급격한 온도상승을 나타내므로서 보다 내화성능이 우수한 마감재의 시공이 필요한 것으로 분석되었다.

  • PDF

부분 무기둥 비계구조 골조 거동에 관한 실험적 연구 (An Experimental Study on the Behavior of Scaffolding System without a Part of Column)

  • 손기상;정희종
    • 한국안전학회지
    • /
    • 제28권4호
    • /
    • pp.66-71
    • /
    • 2013
  • There is a critically structural problem of scaffolding system when one of scaffold columns is remove to be used as a gangway for their temporary office in the structure before finishing all such as an apartment or office building. This is not used to checking to structurally checking at a construction site. This study is to find out which system at a site will be more effective and low-cost-high effectiveness of aluminum ladder, timber ladder, ${\phi}$1/2 inch steel pipe truss with a type of concave, convex warren truss ladders. Theses are structurally tested with horizontal set as a truss type with 1.8 meter long. Concentrated load has been loaded at the upper center of the system and checked its strain at the bottom center, using aluminum-use strain gage and steel-use gauge have been attached concave warren truss with diameter 1/2 inch has 14% stronger than convex truss. Convex truss has almost same strength as an aluminum ladder truss, it is found out.

CGS에 의한 기초지반보강에 관한 연구 (A Study on the Ground Improvement by Compaction Grouting System)

  • 천병식;권형석
    • 한국철도학회논문집
    • /
    • 제2권4호
    • /
    • pp.9-19
    • /
    • 1999
  • The use of compaction grouting evolved in 1950's to correct structural settlement of buildings. Over the almost 50 years, the technology has been developed and is currently used in wide range of applications. Compaction grouting, the injection of a very stiff, 'zero-slump' mortar grout under relatively high pressure, displaces and compacts soils. It can effectively repair natural or man-made soil strength deficiencies in variety of soil formations. Major applications of compaction grouting include densifying loose soils or fill voids caused by sinkholes, poorly compacted fills, broken utilities, improper dewatering, or soft ground tunneling excavation. Other applications include preventing liquefaction, re-leveling settled structures, and using compaction grout bulbs as structural elements of minipiles or underpinning. In this paper, on the basis of the case history constructed in this year, a study has been performed to analyze the basic mechanism of the compaction grouting. Also, the effectiveness of the ground improvement and the bearing capacity of the compaction pile has been verified by the Cone Penetration Test(CPT) and Load Test. Relatively uniform compaction grouting column could be maintained by planning the quality control in the course of grouting. And, the Qualify Control Plan has been conceived using grout pressure, volume of grout and drilling depth.

  • PDF

Simulation of the behaviour of RC columns strengthen with CFRP under rapid loading

  • Esfandiari, Soheil;Esfandiari, Javad
    • Advances in concrete construction
    • /
    • 제4권4호
    • /
    • pp.319-332
    • /
    • 2016
  • In most cases strengthening reinforced concrete columns exposed to high strain rate is to be expected especially within weak designed structures. A special type of loading is instantaneous loading. Rapid loading can be observed in structural columns exposed to axial loads (e.g., caused by the weight of the upper floors during a vertical earthquake and loads caused by damage and collapse of upper floors and pillars of bridges).Subsequently, this study examines the behavior of reinforced concrete columns under rapid loading so as to understand patterns of failure mechanism, failure capacity and strain rate using finite element code. And examines the behavior of reinforced concrete columns at different support conditions and various loading rate, where the concrete columns were reinforced using various counts of FRP (Fiber Reinforcement Polymer) layers with different lengths. The results were compared against other experimental outcomes and the CEB-FIP formula code for considering the dynamic strength increasing factor for concrete materials. This study reveals that the finite element behavior and failure mode, where the results show that the bearing capacity increased with increasing the loading rate. CFRP layers increased the bearing capacity by 20% and also increased the strain capacity by 50% through confining the concrete.

Study on seismic retrofit of structures using SPSW systems and LYP steel material

  • Zirakian, Tadeh;Zhang, Jian
    • Earthquakes and Structures
    • /
    • 제10권1호
    • /
    • pp.1-23
    • /
    • 2016
  • Steel plate shear walls (SPSWs) have been shown to be efficient lateral force-resisting systems, which are increasingly used in new and retrofit construction. These structural systems are designed with either stiffened and stocky or unstiffened and slender web plates based on disparate structural and economical considerations. Based on some limited reported studies, on the other hand, employment of low yield point (LYP) steel infill plates with extremely low yield strength, and high ductility as well as elongation properties is found to facilitate the design and improve the structural behavior and seismic performance of the SPSW systems. On this basis, this paper reports system-level investigations on the seismic response assessment of multi-story SPSW frames under the action of earthquake ground motions. The effectiveness of the strip model in representing the behaviors of SPSWs with different buckling and yielding properties is primarily verified. Subsequently, the structural and seismic performances of several code-designed and retrofitted SPSW frames with conventional and LYP steel infill plates are investigated through detailed modal and nonlinear time-history analyses. Evaluation of various seismic response parameters including drift, acceleration, base shear and moment, column axial load, and web-plate ductility demands, demonstrates the capabilities of SPSW systems in improving the seismic performance of structures and reveals various advantages of use of LYP steel material in seismic design and retrofit of SPSW systems, in particular, application of LYP steel infill plates of double thickness in seismic retrofit of conventional steel and code-designed SPSW frames.

Parametric study of energy dissipation mechanisms of hybrid masonry structures

  • Gao, Zhenjia;Nistor, Mihaela;Stanciulescu, Ilinca
    • Structural Engineering and Mechanics
    • /
    • 제78권4호
    • /
    • pp.387-401
    • /
    • 2021
  • This paper provides a methodology to analyze the seismic performance of different component designs in hybrid masonry structures (HMS). HMS, comprised of masonry panels, steel frames and plate connectors is a relatively new structural system with potential applications in high seismic areas. HMS dissipate earthquake energy through yielding in the steel components and damage in the masonry panels. Currently, there are no complete codes to assist with the design of the energy dissipation components of HMS and there have been no computational studies performed to aid in the understanding of the system energy dissipation mechanisms. This paper presents parametric studies based on calibrated computational models to extrapolate the test data to a wider range of connector strengths and more varied reinforcement patterns and reinforcement ratios of the masonry panels. The results of the numerical studies are used to provide a methodology to examine the effect of connector strength and masonry panel design on the energy dissipation in HMS systems. We use as test cases two story structures subjected to cyclic loading due to the availability of experimental data for these configurations. The methodology presented is however general and can be applied to arbitrary panel geometries, and column and story numbers.